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单萜代谢。薄荷中薄荷酮还原酶的克隆、表达及特性分析。

Monoterpene metabolism. Cloning, expression, and characterization of menthone reductases from peppermint.

作者信息

Davis Edward M, Ringer Kerry L, McConkey Marie E, Croteau Rodney

机构信息

Institute of Biological Chemistry, Washington State University, Pullman, Washington 99164-6340, USA.

出版信息

Plant Physiol. 2005 Mar;137(3):873-81. doi: 10.1104/pp.104.053306. Epub 2005 Feb 22.

Abstract

(-)-Menthone is the predominant monoterpene produced in the essential oil of maturing peppermint (Mentha x piperita) leaves during the filling of epidermal oil glands. This early biosynthetic process is followed by a second, later oil maturation program (approximately coincident with flower initiation) in which the C3-carbonyl of menthone is reduced to yield (-)-(3R)-menthol and (+)-(3S)-neomenthol by two distinct NADPH-dependent ketoreductases. An activity-based in situ screen, by expression in Escherichia coli of 23 putative redox enzymes from an immature peppermint oil gland expressed sequence tag library, was used to isolate a cDNA encoding the latter menthone:(+)-(3S)-neomenthol reductase. Reverse transcription-PCR amplification and RACE were used to acquire the former menthone:(-)-(3R)-menthol reductase directly from mRNA isolated from the oil gland secretory cells of mature leaves. The deduced amino acid sequences of these two reductases share 73% identity, provide no apparent subcellular targeting information, and predict inclusion in the short-chain dehydrogenase/reductase family of enzymes. The menthone:(+)-(3S)-neomenthol reductase cDNA encodes a 35,722-D protein, and the recombinant enzyme yields 94% (+)-(3S)-neomenthol and 6% (-)-(3R)-menthol from (-)-menthone as substrate, and 86% (+)-(3S)-isomenthol and 14% (+)-(3R)-neoisomenthol from (+)-isomenthone as substrate, has a pH optimum of 9.3, and K(m) values of 674 mum, > 1 mm, and 10 mum for menthone, isomenthone, and NADPH, respectively, with a k(cat) of 0.06 s(-1). The recombinant menthone:(-)-(3R)-menthol reductase has a deduced size of 34,070 D and converts (-)-menthone to 95% (-)-(3R)-menthol and 5% (+)-(3S)-neomenthol, and (+)-isomenthone to 87% (+)-(3R)-neoisomenthol and 13% (+)-(3S)-isomenthol, displays optimum activity at neutral pH, and has K(m) values of 3.0 mum, 41 mum, and 0.12 mum for menthone, isomenthone, and NADPH, respectively, with a k(cat) of 0.6 s(-1). The respective activities of these menthone reductases account for all of the menthol isomers found in the essential oil of peppermint. Biotechnological exploitation of these genes could lead to improved production yields of (-)-menthol, the principal and characteristic flavor component of peppermint.

摘要

(-)-薄荷酮是在表皮油腺填充过程中成熟薄荷(薄荷属杂交种)叶片精油中产生的主要单萜。这个早期生物合成过程之后是第二个较晚的油成熟程序(大约与花芽分化同时发生),其中薄荷酮的C3-羰基被两种不同的依赖NADPH的酮还原酶还原,生成(-)-(3R)-薄荷醇和(+)-(3S)-新薄荷醇。通过在大肠杆菌中表达来自未成熟薄荷油腺表达序列标签文库的23种推定氧化还原酶,进行基于活性的原位筛选,以分离编码后一种薄荷酮:(+)-(3S)-新薄荷醇还原酶的cDNA。使用逆转录-聚合酶链反应扩增和RACE直接从成熟叶片油腺分泌细胞分离的mRNA中获取前一种薄荷酮:(-)-(3R)-薄荷醇还原酶。这两种还原酶的推导氨基酸序列具有73%的同一性,没有提供明显的亚细胞靶向信息,并预测它们属于短链脱氢酶/还原酶家族。薄荷酮:(+)-(3S)-新薄荷醇还原酶cDNA编码一种35722-D的蛋白质,重组酶以(-)-薄荷酮为底物时产生94%的(+)-(3S)-新薄荷醇和6%的(-)-(3R)-薄荷醇,以(+)-异薄荷酮为底物时产生86%的(+)-(3S)-异薄荷醇和14%的(+)-(3R)-新异薄荷醇,最适pH为9.3,对薄荷酮、异薄荷酮和NADPH的K(m)值分别为674 μM、>1 mM和10 μM,k(cat)为0.06 s(-1)。重组薄荷酮:(-)-(3R)-薄荷醇还原酶推导大小为34070 D,将(-)-薄荷酮转化为95%的(-)-(3R)-薄荷醇和5%的(+)-(3S)-新薄荷醇,将(+)-异薄荷酮转化为87%的(+)-(3R)-新异薄荷醇和13%的(+)-(3S)-异薄荷醇,在中性pH下显示最佳活性,对薄荷酮、异薄荷酮和NADPH的K(m)值分别为3.0 μM、41 μM和0.12 μM,k(cat)为0.6 s(-1)。这些薄荷酮还原酶的各自活性解释了薄荷精油中发现的所有薄荷醇异构体。对这些基因的生物技术开发可能会提高(-)-薄荷醇的产量,(-)-薄荷醇是薄荷的主要特征风味成分。

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